Characterization of the Metal Fused Filament Fabrication Process for Manufacturing of Pure Copper Inductors

Author:

Schüßler Philipp1ORCID,Franke Jonas1ORCID,Czink Steffen1ORCID,Antusch Steffen1ORCID,Mayer Daniel2,Laube Stephan1ORCID,Hanemann Thomas1ORCID,Schulze Volker12ORCID,Dietrich Stefan1ORCID

Affiliation:

1. Institute for Applied Materials—Materials Science and Engineering (IAM-WK), Karlsruhe Institute of Technology (KIT), 76131 Karlsruhe, Germany

2. wbk Institute of Production Science, Karlsruhe Institute of Technology (KIT), 76131 Karlsruhe, Germany

Abstract

This work presents a comprehensive investigation into the optimization of critical process parameters associated with metal fused filament fabrication (Metal-FFF) for the production of copper-based components. The study focused on three different commercial and one self-manufactured filament, each with unique chemical compositions. These filaments were systematically optimized and the density was characterized for all processing steps, as well as the electrical conductivity on the specimen scale. Remarkably, two of the studied filaments exhibited exceptional properties after sintering with forming gas (up to 94% density and 55.75 MS/m electrical conductivity), approaching the properties measured for established manufacturing methods like metal injection molding. Finally, the research was extended to component-scale applications, demonstrating the successful fabrication of inductors with integrated cooling channels. These components exhibited water tightness and were used in induction hardening experiments, validating the practical utility of the optimized Metal-FFF process. In summary, the results show great promise in advancing the utilization of Metal-FFF in industrial contexts, particularly in the production of high-performance copper components.

Publisher

MDPI AG

Subject

General Materials Science

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